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Lung function during moderate hypobaric hypoxia in normal subjects and patients with chronic obstructive pulmonary disease.

医学 慢性阻塞性肺病 肺活量 肺活量测定 动脉血 减压室 内科学 心脏病学 肺功能测试 肺容积 通风(建筑) 置信区间 回廊的 阻塞性肺病 高海拔对人类的影响 扩散能力 肺功能 哮喘 工程类 解剖 机械工程
作者
Thomas A. Dillard,Krishnan R. Rajagopal,William A. Slivka,Benjamin W. Berg,William J. Mehm,Nancy P. Lawless
出处
期刊:Aviation, Space, and Environmental Medicine [Aerospace Medical Association]
卷期号:69 (10): 979-85 被引量:18
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摘要

We sought to describe changes in spirometric variables and lung volume subdivisions in healthy subjects and patients with chronic obstructive pulmonary disease (COPD) during moderate acute hypobaric hypoxia as occurs during air travel. We further questioned whether changes in lung function may associate with reduced maximum ventilation or worsened arterial blood gases.Ambulatory patients with COPD and healthy adults comprised the study populations (n = 27). We obtained baseline measurements of spirometry, lung volumes and arterial blood gases from each subject at sea level and repeated measurements during altitude exposure to 8000 ft (2438 m) above sea level in a man-rated hypobaric chamber.Six COPD patients and three healthy subjects had declines in FVC during altitude exposure greater than the 95% confidence interval (CI) for expected within day variability (p < 0.05). Average forced vital capacity (FVC) declined by 0.123 +/- 0.254 L (mean +/- SD; 95% CI = -0.255, -0.020; p < 0.05) for all subjects combined. The magnitude of decline in FVC did not differ between groups (p > 0.05) and correlated with increasing residual volume (r = -0.455; <0.05). Change in maximum voluntary ventilation (MVV) in the COPD patients equaled -1.244 +/- 4.797 L x min(-1) (95% CI = -3.71, 1.22; p = 0.301). Decline in maximum voluntary ventilation (MVV) in the COPD patients correlated with decreased FVC (r = 0.630) and increased RV (r = -0.546; p < 0.05). Changes in spirometric variables for patients and controls did not explain significant variability in the arterial blood gas variables PaO2, PaCO2 or pH at altitude.We observed a decline in forced vital capacity in some COPD patients and normal subjects greater than expected for within day variability. Spirometric changes correlated with changes in reduced maximum voluntary ventilation in the patients but not with changes in resting arterial blood gases.

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